School of Chemical and Biomedical Engineering, Nanyang Technological University, 637459, Singapore.
Macromol Biosci. 2012 Mar;12(3):395-401. doi: 10.1002/mabi.201100336. Epub 2011 Dec 30.
The potential of electrospun pullulan/dextran (P/D) nanofibers (average diameter = 323 nm) for vascular tissue engineering applications is explored. The mechanical properties of the nanofibers are of the same order of magnitude as that of human arteries (Young's modulus ≈0.88 MPa; tensile strength ≈0.35 MPa). It is demonstrated that the nanofiber topography enables cell adhesion and that the endothelial phenotype is maintained on the nanofibers. Moreover, P/D nanofibers support a stable confluent monolayer of endothelial cells over 14 d. SMCs seeded on nanofibers display similar levels of alpha smooth muscle actin and a lower proliferation rate than cells on 2D cultures. The observations suggest that nanofibers promote a shift to a quiescent contractile phenotype in SMCs.
静电纺丝普鲁兰/葡聚糖(P/D)纳米纤维(平均直径=323nm)在血管组织工程应用中的潜力正在被探索。纳米纤维的机械性能与人体动脉相当(杨氏模量≈0.88MPa;拉伸强度≈0.35MPa)。研究表明,纳米纤维的拓扑结构能够促进细胞黏附,内皮表型在纳米纤维上得以维持。此外,P/D 纳米纤维支持内皮细胞在 14 天内形成稳定的融合单层。在纳米纤维上接种的平滑肌细胞表现出类似水平的α平滑肌肌动蛋白和比 2D 培养物中细胞更低的增殖率。这些观察结果表明,纳米纤维促进平滑肌细胞向静止收缩表型的转变。